Overview
Veratramine is a steroidal alkaloid naturally occurring in plants of the Veratrum genus, such as Veratrum album and Veratrum nigrum. It is classified as a bioactive compound due to its interaction with biological systems, particularly in modulating ion channels. Historically, Veratrum extracts containing veratramine were used in traditional medicine, though their toxicity limited widespread application. In modern contexts, veratramine is primarily studied for its pharmacological properties, including its effects on sodium channels. Research has explored its potential as a tool compound in neuroscience and toxicology studies, though its clinical use is restricted due to its narrow therapeutic index.
Physical and Chemical Properties
Veratramine is a crystalline solid with a molecular weight of 409.61 g/mol. Its structure includes a steroidal backbone fused with an alkaloid moiety, contributing to its biological activity. The compound is stable under standard conditions but degrades upon prolonged exposure to heat or light. Solubility is a key consideration for laboratory use. Veratramine dissolves well in polar organic solvents like ethanol and methanol but has limited solubility in water. This property influences its formulation in research settings, where solvent systems are carefully selected to ensure consistent results.
Main Applications
The primary application of veratramine lies in pharmaceutical and biochemical research. It serves as a reference standard for studying sodium channel modulators, aiding in the development of novel therapeutics for neurological disorders. Its mechanism of action involves binding to voltage-gated sodium channels, altering their function. Additionally, veratramine is used in toxicology studies to understand the effects of steroidal alkaloids on biological systems. Researchers investigate its potential as a lead compound for drug discovery, though its toxicity profile necessitates careful handling. Outside research, it has no significant industrial or commercial applications.
Safety and Storage
Veratramine is classified as toxic and requires stringent safety measures. Exposure routes include inhalation, ingestion, and skin contact, all of which can lead to adverse effects such as nausea, cardiovascular disturbances, and neurotoxicity. Proper personal protective equipment (PPE), including gloves and lab coats, is mandatory during handling. Storage conditions are critical to maintaining stability. The compound should be kept in a tightly sealed container, protected from light and moisture, at temperatures below 25°C. Long-term storage may require refrigeration, but freeze-thaw cycles should be avoided to prevent degradation.
B2B Procurement Guide
When procuring veratramine, prioritize suppliers with certifications such as ISO or GMP compliance to ensure quality. Key specifications to verify include purity (typically ≥95% by HPLC), solvent residues, and endotoxin levels for cell-based studies. Batch-specific certificates of analysis (CoA) are essential. Pricing varies based on purity and quantity, with bulk purchases often attracting discounts. Lead times can be longer due to the specialized nature of the compound, so plan procurement accordingly. Consider regulatory requirements, such as DEA permits in the U.S., as veratramine may be controlled under certain jurisdictions.
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